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    • 4. 发明申请
    • SIGNAL CAPTURE METHOD AND APPARATUS FOR THE DETECTION OF LOW FREQUENCY ELECTRIC SIGNALS IN LIQUIDS AND BIOLOGICAL MATTER
    • 用于检测液体和生物物质中低频电信号的信号捕获方法和装置
    • WO2014006598A1
    • 2014-01-09
    • PCT/IB2013/055513
    • 2013-07-05
    • RUBESA, Pier
    • RUBESA, Pier
    • G01N37/00
    • G01R23/02G01N33/483G01N37/005
    • The present invention relates to a method and apparatus intended for the detection of low frequency electric waves that can be extracted from water, organic liquids and biological matter. This field phenomenon, that we here refer to here as a "bioharmonic", is an active frequency, or harmonically related series of frequencies, that are a result of a dynamic interplay of natural processes including physical, chemical and electromagnetic interactions. We have discovered that these interactions influence the organization of signal waveform characteristics at very low frequencies. The apparatus produces a low frequency electrical wave that is coupled to a liquid or solid sample by way of a coupling electrode having a very high impedance. As the detected signal also displays field properties, the electrode does not need to be in contact with the sample in order to extract a unique signal. The resultant signal is rectified and passed through a logic gate where it is conditioned using a low pass filter on the gate output stage before amplification. A darlington type transistor is used to amplify the signal by a minimum factor of twenty thousand.
    • 本发明涉及一种用于检测可从水,有机液体和生物物质中提取的低频电波的方法和装置。 我们这里将这里称为“生物谐波”的现象现象是由自然过程(包括物理,化学和电磁相互作用)的动态相互作用引起的一种主动频率或谐波相关的频率系列。 我们发现这些相互作用影响了非常低频率下信号波形特征的组织。 该装置产生低频电波,其通过具有非常高阻抗的耦合电极耦合到液体或固体样品。 由于检测到的信号也显示场特性,电极不需要与样品接触,以便提取唯一的信号。 所得到的信号被整流并通过逻辑门,其中在放大之前在栅极输出级上使用低通滤波器进行调节。 达林顿型晶体管用于将信号放大最小二万分之一。